Question: Net Torque and Angular Motion (rad) Angular position 0.6 (rad/s) Angular velocity 1.1 DoANONboo 10 20 30 40 (S) 10 20 30 40 (s) Blue

 Net Torque and Angular Motion (rad) Angular position 0.6 (rad/s) Angularvelocity 1.1 DoANONboo 10 20 30 40 (S) 10 20 30 40(s) Blue force magnitude, N: 5 - 10 Blue force angle, degrees:

Net Torque and Angular Motion (rad) Angular position 0.6 (rad/s) Angular velocity 1.1 DoANONboo 10 20 30 40 (S) 10 20 30 40 (s) Blue force magnitude, N: 5 - 10 Blue force angle, degrees: 90 0 360 O Blue force position, m: 2.0 -2 Red force magnitude, N: 0 10 Red force position, m: Clear Trace -2.0 -2 Net torque, Nm 10 Concept Questions Notes Audio IntroNet Torque and Angular Motion (rad) Angular position 2.2 (rad/s) Angular velocity 2 FIL baANONBOO baANONboo 10 20 30 40 (s) 10 20 30 40 (S) Blue force magnitude, N: 5 -10 Blue force angle, degrees: 90 360 Blue force position, m: 2.0 -2 Red force magnitude, N: 0 10 Red force position, m: Net torque, Nm 10 Clear Trace -2.0 Concept Questions Notes Audio Intro O II KQuestion 6 of 20 V 15 View Policies Current Attempt in Progress Consider the following four cases related to the simulation. For each case set the magnitude of the blue force to be 2 N and the position of the blue force to be 0.4 m. Case 1: The angle of the blue force is 90 degrees. The red force has a magnitude of zero. Case 2: The angle of the blue force is 90 degrees. The red force has a magnitude of 2 N and a position of -0.4 m. Case 3: The angle of the blue force is 270 degrees. The red force has a magnitude of 2 N and a position of 0.4 m. Case 4: The angle of the blue force is 70 degrees. The red force has a magnitude of 2 N and a position of -0.4 m. Rank the cases by the net torque, from most positive to most negative. Use only - and/or - signs, e.g., 3>2>1-4. 2-3-1-4 1-2+3>4 1 2-324 nd Media 4-1-2-3 Attempts: 0 of 3 used Submit Answer 1 4-2-3

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